mirror of
https://github.com/red-prig/fpPS4.git
synced 2024-12-12 00:34:09 +00:00
732 lines
14 KiB
ObjectPascal
732 lines
14 KiB
ObjectPascal
unit ps4_sema;
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{$mode objfpc}{$H+}
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interface
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uses
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windows,
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sys_types,
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spinlock;
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const
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SCE_KERNEL_SEMA_ATTR_TH_FIFO=$01;
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SCE_KERNEL_SEMA_ATTR_TH_PRIO=$02;
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SCE_KERNEL_SEMA_ID_INVALID:Int64=-1;
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SEM_FAILED =nil;
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SEM_VALUE_MAX =High(Integer);
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type
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pwsem_node=^wsem_node;
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wsem_node=packed record
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pNext,pPrev:pwsem_node;
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//
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thread:THandle;
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Count:Integer;
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ret:Integer;
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end;
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wsem_list=object
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pHead,pTail:pwsem_node;
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procedure Insert(Node:pwsem_node);
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procedure Remove(node:pwsem_node);
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end;
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PSceKernelSemaOptParam=^TSceKernelSemaOptParam;
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TSceKernelSemaOptParam=packed record
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size:QWORD;
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end;
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PSceKernelSema=^SceKernelSema;
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SceKernelSema=^_sem_t;
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_sem_t=packed record
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valid:DWORD;
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init :Integer;
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max :Integer;
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num :Integer;
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value:Integer;
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refs :DWORD;
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vlock:Pointer;
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list :wsem_list;
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name :array[0..31] of AnsiChar;
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end;
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function ps4_sem_init(sem:PSceKernelSema;pshared,value:Integer):Integer; SysV_ABI_CDecl;
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function ps4_sem_destroy(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
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function ps4_sem_getvalue(sem:PSceKernelSema;sval:PInteger):Integer; SysV_ABI_CDecl;
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function ps4_sem_post(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
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function ps4_sem_timedwait(sem:PSceKernelSema;ts:Ptimespec):Integer; SysV_ABI_CDecl;
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function ps4_sem_trywait(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
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function ps4_sem_wait(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelCreateSema(
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sem:PSceKernelSema;
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name:Pchar;
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attr:DWORD;
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init,max:Integer;
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opt:PSceKernelSemaOptParam):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelDeleteSema(sem:SceKernelSema):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelWaitSema(sem:SceKernelSema;Count:Integer;pTimeout:PDWORD):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelSignalSema(sem:SceKernelSema;Count:Integer):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelPollSema(sem:SceKernelSema;Count:Integer):Integer; SysV_ABI_CDecl;
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function ps4_sceKernelCancelSema(sem:SceKernelSema;setCount:Integer;threads:PInteger):Integer; SysV_ABI_CDecl;
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function do_sema_b_wait(sema:THandle;pTimeout:PQWORD;var cs:TRTLCriticalSection;var val:Integer):Integer;
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function do_sema_b_wait_intern(sema:THandle;pTimeout:PQWORD):Integer; inline;
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function do_sema_b_release(sema:THandle;count:DWORD;var cs:TRTLCriticalSection;var val:Integer):Integer;
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procedure SwEnterCriticalSection(var cs:TRTLCriticalSection);
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implementation
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//int sem_unlink(const char *);
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uses
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ntapi,
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atomic,
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sys_kernel,
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sys_pthread,
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sys_signal,
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sys_time,
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ps4_time;
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const
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LIFE_SEM=$BAB1F00D;
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DEAD_SEM=$DEADBEEF;
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function SwTryEnterCriticalSection(var cs:TRTLCriticalSection):longint;
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begin
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_sig_lock;
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Result:=System.TryEnterCriticalSection(cs);
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_sig_unlock;
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end;
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procedure SwEnterCriticalSection(var cs:TRTLCriticalSection);
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var
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ft:TLargeInteger;
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begin
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ft:=-10000;
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While (SwTryEnterCriticalSection(cs)=0) do
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begin
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SwDelayExecution(True,@ft);
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end;
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end;
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function do_sema_b_wait(sema:THandle;pTimeout:PQWORD;var cs:TRTLCriticalSection;var val:Integer):Integer;
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var
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v:Integer;
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begin
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_sig_lock;
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SwEnterCriticalSection(cs);
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System.InterlockedDecrement(val);
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v:=val;
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System.LeaveCriticalSection(cs);
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if (v>=0) then
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begin
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_sig_unlock;
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Exit(0);
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end;
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Result:=SwWaitFor(sema,pTimeout);
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SwEnterCriticalSection(cs);
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if (Result<>0) then
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begin
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System.InterlockedIncrement(val);
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end;
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System.LeaveCriticalSection(cs);
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_sig_unlock;
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end;
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function do_sema_b_wait_intern(sema:THandle;pTimeout:PQWORD):Integer; inline;
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begin
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Result:=SwWaitFor(sema,pTimeout);
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end;
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function _rel_wait_count(waiters_count,count:Integer):Integer; inline;
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begin
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if (waiters_count<count) then
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Result:=waiters_count
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else
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Result:=count;
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end;
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function __do_sema_b_release(sema:THandle;count:DWORD;var cs:TRTLCriticalSection;var val:Integer):Integer;
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var
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waiters_count:Integer;
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begin
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SwEnterCriticalSection(cs);
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if (Int64(val)+Int64(count))>$7fffffff then
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begin
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System.LeaveCriticalSection(cs);
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Exit(EINVAL);
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end;
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waiters_count:=-val;
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System.InterlockedExchangeAdd(val,count);
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if (waiters_count<=0) then
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begin
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LeaveCriticalSection(cs);
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Exit(0);
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end;
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if ReleaseSemaphore(sema,_rel_wait_count(waiters_count,count),nil) then
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begin
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LeaveCriticalSection(cs);
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Exit(0);
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end;
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System.InterlockedExchangeAdd(val, -count);
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System.LeaveCriticalSection(cs);
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Exit(EINVAL);
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end;
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function do_sema_b_release(sema:THandle;count:DWORD;var cs:TRTLCriticalSection;var val:Integer):Integer;
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begin
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_sig_lock;
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Result:=__do_sema_b_release(sema,count,cs,val);
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_sig_unlock;
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end;
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/////
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procedure wsem_list.Insert(Node:pwsem_node);
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begin
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if (pTail=nil) then
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begin
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pHead:=node;
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node^.pPrev:=nil;
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end else
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begin
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pTail^.pNext:=node;
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node^.pPrev:=pTail;
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end;
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node^.pNext:=nil;
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pTail:=node;
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end;
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procedure wsem_list.Remove(node:pwsem_node);
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begin
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if (node^.pPrev=nil) then
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begin
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if (pHead=node) then
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begin
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pHead:=node^.pNext;
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end;
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end else
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begin
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node^.pPrev^.pNext:=node^.pNext;
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end;
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if (node^.pNext=nil) then
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begin
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if (pTail=node) then
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begin
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pTail:=node^.pPrev;
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end;
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end else
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begin
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node^.pNext^.pPrev:=node^.pPrev;
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end;
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end;
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function sem_impl_init(m,mi:PSceKernelSema;max,value:Integer):Integer;
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var
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new_mi:SceKernelSema;
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begin
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new_mi:=AllocMem(SizeOf(_sem_t));
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if (new_mi=nil) then Exit(ENOMEM);
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new_mi^.init :=value;
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new_mi^.max :=max;
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new_mi^.value:=value;
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new_mi^.valid:=LIFE_SEM;
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new_mi^.refs :=1;
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if CAS(m^,mi^,new_mi) then
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begin
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mi^:=new_mi;
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end else
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begin
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FreeMem(new_mi);
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mi^:=m^;
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end;
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Result:=0;
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end;
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function _sem_init(sem:PSceKernelSema;value:Integer):Integer;
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var
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sv:SceKernelSema;
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begin
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if (sem=nil) or (value<0) then Exit(EINVAL);
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sv:=sem^;
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_sig_lock;
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Result:=sem_impl_init(sem,@sv,SEM_VALUE_MAX,value);
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_sig_unlock;
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end;
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function sem_enter(sem,svp:PSceKernelSema):Integer;
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var
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sv:SceKernelSema;
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begin
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if (sem=nil) then Exit(EINVAL);
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sv:=sem^;
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if (sv=nil) then Exit(EINVAL);
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if not safe_test(sv^.valid,LIFE_SEM) then Exit(ESRCH);
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spin_lock(sv^.vlock);
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System.InterlockedIncrement(sv^.refs);
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svp^:=sv;
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Result:=0;
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end;
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procedure sem_leave(sv:SceKernelSema);
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begin
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if (System.InterlockedDecrement(sv^.refs)=0) then
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begin
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SwFreeMem(sv);
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end;
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end;
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procedure _apc_null(dwParam:PTRUINT); stdcall;
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begin
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end;
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function _sem_destroy(sem:PSceKernelSema):Integer;
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var
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sv:SceKernelSema;
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node:pwsem_node;
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begin
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Result:=sem_enter(sem,@sv);
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if (Result<>0) then Exit;
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sv^.value:=SEM_VALUE_MAX;
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if not CAS(sv^.valid,LIFE_SEM,DEAD_SEM) then
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begin
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Exit(EINVAL);
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end;
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//cancel all
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sv^.value:=sv^.max;
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node:=sv^.list.pHead;
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While (node<>nil) do
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begin
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if (node^.ret=1) then
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begin
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node^.Count:=0;
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node^.ret:=EACCES;
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NtQueueApcThread(node^.thread,@_apc_null,0,nil,0);
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end;
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node:=node^.pNext;
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end;
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spin_unlock(sv^.vlock);
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System.InterlockedDecrement(sv^.refs);
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sem_leave(sv);
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Result:=0;
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end;
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function _sem_trywait(sem:PSceKernelSema;count:Integer):Integer;
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var
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sv:SceKernelSema;
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begin
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Result:=sem_enter(sem,@sv);
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if (Result<>0) then Exit;
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if (count>sv^.max) then
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begin
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Exit(EINVAL);
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end;
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if (sv^.value>=Count) then
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begin
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Dec(sv^.value,Count);
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Result:=0;
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end else
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begin
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Result:=EBUSY;
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end;
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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end;
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function _sem_wait(sem:PSceKernelSema;count:Integer;pTimeout:PQWORD):Integer;
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var
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t:pthread;
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sv:SceKernelSema;
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timeout:Int64;
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passed :Int64;
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START:QWORD;
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QTIME:QWORD;
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node:wsem_node;
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begin
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if (count<=0) then Exit(EINVAL);
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t:=_get_curthread;
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if (t=nil) then Exit(ESRCH);
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Result:=sem_enter(sem,@sv);
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if (Result<>0) then Exit;
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//Writeln(GetCurrentThreadId,':>sem_wait:',sv^.name,' count:',count,' value:',sv^.value);
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if (count>sv^.max) then
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begin
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Exit(EINVAL);
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end;
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if (sv^.value>=count) then
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begin
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Dec(sv^.value,count);
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Exit(0);
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end;
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node:=Default(wsem_node);
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node.thread:=t^.handle;
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node.count :=count;
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node.ret :=1;
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sv^.list.Insert(@node);
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spin_unlock(sv^.vlock);
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if (pTimeout<>nil) then
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begin
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timeout:=(pTimeout^ div 100);
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SwSaveTime(START);
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end else
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begin
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timeout:=NT_INFINITE;
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end;
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repeat
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if (node.ret<>1) then //is signaled
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begin
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Result:=node.ret;
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Break;
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end;
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if (pTimeout<>nil) then
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begin
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if (timeout=0) then
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begin
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Result:=ETIMEDOUT;
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Break;
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end;
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SwSaveTime(QTIME);
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timeout:=-timeout;
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SwDelayExecution(True,@timeout);
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timeout:=-timeout;
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passed:=SwTimePassedUnits(QTIME);
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if (passed>=timeout) then
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begin
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Result:=ETIMEDOUT;
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Break;
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end else
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begin
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timeout:=timeout-passed;
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end;
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end else
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begin
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SwDelayExecution(True,@timeout);
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end;
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until false;
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if (pTimeout<>nil) then
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begin
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if (Result=ETIMEDOUT) then
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begin
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pTimeout^:=0;
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end else
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begin
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passed:=SwTimePassedUnits(QTIME);
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pTimeout^:=passed*100;
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end;
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end;
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spin_lock(sv^.vlock);
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sv^.list.Remove(@node);
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spin_unlock(sv^.vlock);
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//Writeln(GetCurrentThreadId,':<sem_wait:',sv^.name,' count:',count,' value:',sv^.value);
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sem_leave(sv);
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end;
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function _sem_timedwait(sem:PSceKernelSema;ts:Ptimespec):Integer;
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var
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t:QWORD;
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begin
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if (ts=nil) then
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begin
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_sig_lock;
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Result:=_sem_wait(sem,1,nil);
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_sig_unlock;
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end else
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begin
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t:=_pthread_rel_time_in_ns(ts^);
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_sig_lock;
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Result:=_sem_wait(sem,1,@t);
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_sig_unlock;
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end;
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end;
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function _sem_post(sem:PSceKernelSema;count:Integer):Integer;
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var
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sv:SceKernelSema;
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node:pwsem_node;
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value:Integer;
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begin
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if (count<=0) then Exit(EINVAL);
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Result:=sem_enter(sem,@sv);
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if (Result<>0) then Exit;
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//Writeln(GetCurrentThreadId,':>sem_post:',sv^.name,' count:',count,' value:',sv^.value);
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if (count>sv^.max) then
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begin
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Exit(EINVAL);
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end;
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value:=sv^.value+count;
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node:=sv^.list.pHead;
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While (node<>nil) do
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begin
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if (node^.ret=1) then
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begin
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if (node^.Count>value) then
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begin
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//Dec(node^.Count,value);
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//value:=0;
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Break;
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end else
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if (node^.Count<=value) then
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begin
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Dec(value,node^.Count);
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node^.Count:=0;
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node^.ret:=0;
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NtQueueApcThread(node^.thread,@_apc_null,0,nil,0);
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if (value=0) then Break;
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end;
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end;
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node:=node^.pNext;
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end;
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if (value>sv^.max) then
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begin
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sv^.value:=sv^.max;
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Result:=EOVERFLOW;
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end else
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begin
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sv^.value:=value;
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end;
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spin_unlock(sv^.vlock);
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//Writeln(GetCurrentThreadId,'<sem_post:',sv^.name,' count:',count,' value:',sv^.value);
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sem_leave(sv);
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end;
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function _sem_getvalue(sem:PSceKernelSema;sval:PInteger):Integer;
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var
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sv:SceKernelSema;
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begin
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if (sval=nil) then Exit(EINVAL);
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Result:=sem_enter(sem,@sv);
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if (Result<>0) then Exit;
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sval^:=sv^.value;
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spin_unlock(sv^.vlock);
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sem_leave(sv);
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Result:=0;
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end;
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//
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function ps4_sem_init(sem:PSceKernelSema;pshared,value:Integer):Integer; SysV_ABI_CDecl;
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begin
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Result:=_set_errno(_sem_init(sem,value));
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end;
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function ps4_sem_destroy(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
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begin
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|
_sig_lock;
|
|
Result:=_set_errno(_sem_destroy(sem));
|
|
_sig_unlock;
|
|
end;
|
|
|
|
function ps4_sem_getvalue(sem:PSceKernelSema;sval:PInteger):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=_set_errno(_sem_getvalue(sem,sval));
|
|
_sig_unlock;
|
|
end;
|
|
|
|
function ps4_sem_post(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=_set_errno(_sem_post(sem,1));
|
|
_sig_unlock;
|
|
end;
|
|
|
|
function ps4_sem_timedwait(sem:PSceKernelSema;ts:Ptimespec):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
Result:=_set_errno(_sem_timedwait(sem,ts));
|
|
end;
|
|
|
|
function ps4_sem_trywait(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=_sem_trywait(sem,1);
|
|
_sig_unlock;
|
|
if (Result=EBUSY) then Result:=EAGAIN;
|
|
Result:=_set_errno(Result);
|
|
end;
|
|
|
|
function ps4_sem_wait(sem:PSceKernelSema):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=_set_errno(_sem_wait(sem,1,nil));
|
|
_sig_unlock;
|
|
end;
|
|
|
|
////
|
|
|
|
function ps4_sceKernelCreateSema(
|
|
sem:PSceKernelSema;
|
|
name:Pchar;
|
|
attr:DWORD;
|
|
init,max:Integer;
|
|
opt:PSceKernelSemaOptParam):Integer; SysV_ABI_CDecl;
|
|
var
|
|
sv:SceKernelSema;
|
|
begin
|
|
if (sem=nil) or (max<=0) or (init<0) then Exit(_set_sce_errno(SCE_KERNEL_ERROR_EINVAL));
|
|
sv:=sem^;
|
|
_sig_lock;
|
|
Result:=px2sce(sem_impl_init(sem,@sv,max,init));
|
|
_set_sce_errno(Result);
|
|
_sig_unlock;
|
|
if (Result<>0) then Exit;
|
|
if (name<>nil) then MoveChar0(name^,sv^.name,32);
|
|
end;
|
|
|
|
function ps4_sceKernelDeleteSema(sem:SceKernelSema):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=px2sce(_sem_destroy(@sem));
|
|
_set_sce_errno(Result);
|
|
_sig_unlock;
|
|
end;
|
|
|
|
//typedef unsigned int SceKernelUseconds;
|
|
function ps4_sceKernelWaitSema(sem:SceKernelSema;Count:Integer;pTimeout:PDWORD):Integer; SysV_ABI_CDecl;
|
|
var
|
|
t:QWORD;
|
|
begin
|
|
if (pTimeout=nil) then
|
|
begin
|
|
_sig_lock;
|
|
Result:=px2sce(_sem_wait(@sem,Count,nil));
|
|
_set_sce_errno(Result);
|
|
_sig_unlock;
|
|
end else
|
|
begin
|
|
t:=_usec2nsec(pTimeout^);
|
|
_sig_lock;
|
|
Result:=px2sce(_sem_wait(@sem,Count,@t));
|
|
_set_sce_errno(Result);
|
|
_sig_unlock;
|
|
pTimeout^:=dwMilliSecs(_nsec2usec(t));
|
|
end;
|
|
end;
|
|
|
|
function ps4_sceKernelSignalSema(sem:SceKernelSema;Count:Integer):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=_sem_post(@sem,Count);
|
|
_sig_unlock;
|
|
if (Result=EOVERFLOW) then Result:=EINVAL;
|
|
Result:=px2sce(Result);
|
|
_set_sce_errno(Result);
|
|
end;
|
|
|
|
function ps4_sceKernelPollSema(sem:SceKernelSema;Count:Integer):Integer; SysV_ABI_CDecl;
|
|
begin
|
|
_sig_lock;
|
|
Result:=px2sce(_sem_trywait(@sem,count));
|
|
_set_sce_errno(Result);
|
|
_sig_unlock;
|
|
end;
|
|
|
|
function ps4_sceKernelCancelSema(sem:SceKernelSema;setCount:Integer;threads:PInteger):Integer; SysV_ABI_CDecl;
|
|
var
|
|
sv:SceKernelSema;
|
|
node:pwsem_node;
|
|
reset:Integer;
|
|
begin
|
|
if (setCount<=0) then Exit(EINVAL);
|
|
Result:=sem_enter(@sem,@sv);
|
|
if (Result<>0) then Exit;
|
|
|
|
if (setCount>sv^.max) then
|
|
begin
|
|
spin_unlock(sv^.vlock);
|
|
sem_leave(sv);
|
|
Exit(_set_sce_errno(SCE_KERNEL_ERROR_EINVAL));
|
|
end;
|
|
|
|
sv^.value:=setCount;
|
|
|
|
reset:=0;
|
|
node:=sv^.list.pHead;
|
|
While (node<>nil) do
|
|
begin
|
|
if (node^.ret=1) then
|
|
begin
|
|
Inc(reset);
|
|
node^.Count:=0;
|
|
node^.ret:=ECANCELED;
|
|
NtQueueApcThread(node^.thread,@_apc_null,0,nil,0);
|
|
end;
|
|
node:=node^.pNext;
|
|
end;
|
|
|
|
if (threads<>nil) then
|
|
begin
|
|
threads^:=reset;
|
|
end;
|
|
|
|
spin_unlock(sv^.vlock);
|
|
sem_leave(sv);
|
|
|
|
_set_sce_errno(Result);
|
|
end;
|
|
|
|
|
|
end.
|
|
|